Sternson Scott M, Atasoy Deniz
Janelia Research Campus, HHMI, Ashburn, Va., USA.
Neuroendocrinology. 2014;100(2-3):95-102. doi: 10.1159/000369072. Epub 2014 Nov 6.
New tools for mapping and manipulating molecularly defined neural circuits have improved the understanding of how the central nervous system regulates appetite. Studies that focused on Agouti-related protein neurons, a starvation-sensitive hypothalamic population, have identified multiple circuit elements that can elicit or suppress feeding behavior. Distinct axon projections of this neuron population point to different circuits that regulate long-term appetite, short-term feeding, or visceral malaise-mediated anorexia. Here, we review recent studies examining these neural circuits that control food intake.
用于绘制和操纵分子定义神经回路的新工具,增进了我们对中枢神经系统如何调节食欲的理解。针对刺鼠相关蛋白神经元(一种对饥饿敏感的下丘脑神经元群体)开展的研究,已识别出多个能够引发或抑制进食行为的神经回路元件。该神经元群体不同的轴突投射指向不同的神经回路,这些回路分别调节长期食欲、短期进食或内脏不适介导的厌食。在此,我们综述了近期有关这些控制食物摄入神经回路的研究。